Title :
A time-stepping coupled finite element-state space model for induction motor drives. II. Machine performance computation and verification
Author :
Bangura, I.F. ; Isaac, F.N. ; Demerdash, N.A. ; Arkadan, A.A.
Author_Institution :
Dept. of Electr. & Comput. Eng., Marquette Univ., Milwaukee, WI, USA
fDate :
12/1/1999 12:00:00 AM
Abstract :
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of induction motor drives was developed. The model formulation and algorithm allows one to rigorously model the effects of space harmonics caused by magnetic circuit nonlinearities, topology and winding layouts, as well as their interaction with time harmonics caused by the power condition (inverter) operation. In this paper, the model is used in the computation of the parameters and prediction of performance characteristics of a 3-phase, 2 pole, 1.2-hp, 208 V squirrel-cage case-study induction motor. In addition, emphasis is laid on comparison between sinusoidal and inverter operations, with regard to effects on ohmic and core losses, as well as torque ripples. Furthermore, this includes harmonic breakdowns of selected inductance profiles and developed torque profiles. Numerical simulations were verified by comparison to test data with excellent correlation between both sets of results
Keywords :
finite element analysis; induction motor drives; machine theory; machine windings; squirrel cage motors; state-space methods; 1.2 hp; 208 V; algorithm; core losses; inductance profile; induction motor drives; machine performance computation; magnetic circuit nonlinearities; model formulation; numerical simulation; ohmic losses; space harmonics; squirrel-cage motor; time harmonics; time-stepping coupled finite element-state space model; topology; torque profile; torque ripple; winding layouts; Circuit topology; Coupling circuits; Finite element methods; Induction motor drives; Induction motors; Inverters; Magnetic circuits; Power system harmonics; Predictive models; Torque;
Journal_Title :
Energy Conversion, IEEE Transactions on